Assessing the tissue-imaging performance of confocal microscope architectures via Monte Carlo simulations.
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[1] L. C. Henyey,et al. Diffuse radiation in the Galaxy , 1940 .
[2] A. Welch,et al. A review of the optical properties of biological tissues , 1990 .
[3] J. Pawley,et al. Handbook of Biological Confocal Microscopy , 1990, Springer US.
[4] Y. Sabharwal,et al. Slit-scanning confocal microendoscope for high-resolution in vivo imaging. , 1999, Applied optics.
[5] Matthew D. Chidley,et al. In vivo fiber-optic confocal reflectance microscope with an injection-molded plastic miniature objective lens. , 2005, Applied optics.
[6] Christopher H Contag,et al. Dual-axes confocal reflectance microscope for distinguishing colonic neoplasia. , 2006, Journal of biomedical optics.
[7] Milind Rajadhyaksha,et al. Confocal theta line-scanning microscope for imaging human tissues. , 2007, Applied optics.
[8] Charles A Dimarzio,et al. Simulation of a theta line-scanning confocal microscope. , 2007, Journal of biomedical optics.
[9] Thomas D. Wang,et al. Efficient rejection of scattered light enables deep optical sectioning in turbid media with low-numerical-aperture optics in a dual-axis confocal architecture. , 2008, Journal of biomedical optics.
[10] A. Rouse,et al. Monte Carlo characterization of parallelized fluorescence confocal systems imaging in turbid media. , 2009, Journal of biomedical optics.
[11] Milind Rajadhyaksha,et al. Optimization of pupil design for point-scanning and line-scanning confocal microscopy , 2011, Biomedical optics express.